Method and apparatus for enhanced photo-thermal imaging and spectroscopy
System for performing chemical spectroscopy on samples from the scale of nanometers to millimeters or more with a multifunctional platform combining analytical and imaging techniques including dual beam photo-thermal spectroscopy with confocal microscopy, Raman spectroscopy, fluorescence detection, various vacuum analytical techniques and/or mass spectrometry. In embodiments described herein, the light beams of a dual-beam system are used for heating and sensing.
1. A method for analyzing a sample, the system comprising a source of infrared radiation, a source of probe light having a wavelength shorter than the source of infrared radiation, a probe light collector, and a system controller/data analyzer, the system comprising:
(a) illuminating a region of the sample with a pulsed infrared beam from the source of infrared radiation;
(b) illuminating at least a sub-region of the sample with a probe light beam from the source of probe light;
(c) creating a trigger signal that is coincident with the pulsed infrared beam;
(d) collecting probe light from the sample using optics configured to image the sample region onto a two dimensional camera array, wherein the collection by the camera array is triggered by the trigger pulse and gated to be at a shorter interval than a thermal diffusion time constant of the sample;
(e) collecting probe light in response to a trigger signal with no pulsed infrared beam;
(f) acquiring at least one image frame from at least one frame of collected light in the presence of the pulsed infrared beam; and
(g) analyzing probe light collected from the sample to obtain information indicative of infrared absorption of the sub-region of the sample;
wherein the probe light is collected at a gated camera exposure duration less than at least 100 microseconds.
2. The method of claim 1 further comprising processing the frames of data from both the pulsed infrared beam and no pulsed infrared beam, wherein processing includes one of a subtraction; division or other mathematical function, to obtain a background correction, which is applicable to later acquired frames of image data by the camera.